mirror of
https://github.com/KolibriOS/kolibrios.git
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a4c9cb975a
git-svn-id: svn://kolibrios.org@8436 a494cfbc-eb01-0410-851d-a64ba20cac60
314 lines
8.2 KiB
C
Executable File
314 lines
8.2 KiB
C
Executable File
/*
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jbig2dec
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Copyright (C) 2001-2005 Artifex Software, Inc.
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This software is distributed under license and may not
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be copied, modified or distributed except as expressly
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authorized under the terms of the license contained in
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the file LICENSE in this distribution.
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For further licensing information refer to http://artifex.com/ or
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contact Artifex Software, Inc., 7 Mt. Lassen Drive - Suite A-134,
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San Rafael, CA 94903, U.S.A., +1(415)492-9861.
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include "os_types.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h> /* memcpy() */
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#include "jbig2.h"
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#include "jbig2_priv.h"
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#include "jbig2_image.h"
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/* allocate a Jbig2Image structure and its associated bitmap */
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Jbig2Image* jbig2_image_new(Jbig2Ctx *ctx, int width, int height)
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{
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Jbig2Image *image;
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int stride;
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image = (Jbig2Image *)jbig2_alloc(ctx->allocator, sizeof(*image));
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if (image == NULL) {
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jbig2_error(ctx, JBIG2_SEVERITY_FATAL, -1,
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"could not allocate image structure");
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return NULL;
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}
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stride = ((width - 1) >> 3) + 1; /* generate a byte-aligned stride */
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image->data = (uint8_t *)jbig2_alloc(ctx->allocator, stride*height);
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if (image->data == NULL) {
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jbig2_error(ctx, JBIG2_SEVERITY_FATAL, -1,
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"could not allocate image data buffer! [%d bytes]\n", stride*height);
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jbig2_free(ctx->allocator, image);
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return NULL;
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}
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image->width = width;
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image->height = height;
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image->stride = stride;
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image->refcount = 1;
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return image;
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}
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/* clone an image pointer by bumping its reference count */
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Jbig2Image* jbig2_image_clone(Jbig2Ctx *ctx, Jbig2Image *image)
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{
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image->refcount++;
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return image;
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}
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/* release an image pointer, freeing it it appropriate */
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void jbig2_image_release(Jbig2Ctx *ctx, Jbig2Image *image)
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{
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image->refcount--;
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if (!image->refcount) jbig2_image_free(ctx, image);
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}
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/* free a Jbig2Image structure and its associated memory */
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void jbig2_image_free(Jbig2Ctx *ctx, Jbig2Image *image)
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{
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jbig2_free(ctx->allocator, image->data);
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jbig2_free(ctx->allocator, image);
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}
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/* resize a Jbig2Image */
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Jbig2Image *jbig2_image_resize(Jbig2Ctx *ctx, Jbig2Image *image,
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int width, int height)
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{
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if (width == image->width) {
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/* use the same stride, just change the length */
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image->data = jbig2_realloc(ctx->allocator,
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image->data, image->stride*height);
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if (image->data == NULL) {
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jbig2_error(ctx, JBIG2_SEVERITY_FATAL, -1,
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"could not resize image buffer!");
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return NULL;
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}
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if (height > image->height) {
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memset(image->data + image->height*image->stride,
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0, (height - image->height)*image->stride);
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}
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image->height = height;
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} else {
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/* we must allocate a new image buffer and copy */
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jbig2_error(ctx, JBIG2_SEVERITY_WARNING, -1,
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"jbig2_image_resize called with a different width (NYI)");
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}
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return NULL;
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}
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/* composite one jbig2_image onto another
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slow but general version */
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int jbig2_image_compose_unopt(Jbig2Ctx *ctx,
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Jbig2Image *dst, Jbig2Image *src,
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int x, int y, Jbig2ComposeOp op)
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{
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int i, j;
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int sw = src->width;
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int sh = src->height;
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int sx = 0;
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int sy = 0;
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/* clip to the dst image boundaries */
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if (x < 0) { sx += -x; sw -= -x; x = 0; }
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if (y < 0) { sy += -y; sh -= -y; y = 0; }
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if (x + sw >= dst->width) sw = dst->width - x;
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if (y + sh >= dst->height) sh = dst->height - y;
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switch (op) {
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case JBIG2_COMPOSE_OR:
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for (j = 0; j < sh; j++) {
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for (i = 0; i < sw; i++) {
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jbig2_image_set_pixel(dst, i+x, j+y,
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jbig2_image_get_pixel(src, i+sx, j+sy) |
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jbig2_image_get_pixel(dst, i+x, j+y));
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}
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}
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break;
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case JBIG2_COMPOSE_AND:
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for (j = 0; j < sh; j++) {
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for (i = 0; i < sw; i++) {
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jbig2_image_set_pixel(dst, i+x, j+y,
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jbig2_image_get_pixel(src, i+sx, j+sy) &
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jbig2_image_get_pixel(dst, i+x, j+y));
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}
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}
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break;
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case JBIG2_COMPOSE_XOR:
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for (j = 0; j < sh; j++) {
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for (i = 0; i < sw; i++) {
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jbig2_image_set_pixel(dst, i+x, j+y,
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jbig2_image_get_pixel(src, i+sx, j+sy) ^
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jbig2_image_get_pixel(dst, i+x, j+y));
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}
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}
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break;
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case JBIG2_COMPOSE_XNOR:
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for (j = 0; j < sh; j++) {
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for (i = 0; i < sw; i++) {
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jbig2_image_set_pixel(dst, i+x, j+y,
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~(jbig2_image_get_pixel(src, i+sx, j+sy) ^
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jbig2_image_get_pixel(dst, i+x, j+y)));
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}
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}
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break;
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case JBIG2_COMPOSE_REPLACE:
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for (j = 0; j < sh; j++) {
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for (i = 0; i < sw; i++) {
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jbig2_image_set_pixel(dst, i+x, j+y,
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jbig2_image_get_pixel(src, i+sx, j+sy));
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}
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}
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break;
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}
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return 0;
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}
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/* composite one jbig2_image onto another */
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int jbig2_image_compose(Jbig2Ctx *ctx, Jbig2Image *dst, Jbig2Image *src,
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int x, int y, Jbig2ComposeOp op)
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{
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int i, j;
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int w, h;
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int leftbyte, rightbyte;
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int shift;
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uint8_t *s, *ss;
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uint8_t *d, *dd;
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uint8_t mask, rightmask;
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if (op != JBIG2_COMPOSE_OR) {
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/* hand off the the general routine */
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return jbig2_image_compose_unopt(ctx, dst, src, x, y, op);
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}
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/* clip */
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w = src->width;
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h = src->height;
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ss = src->data;
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/* FIXME: this isn't sufficient for the < 0 cases */
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if (x < 0) { w += x; x = 0; }
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if (y < 0) { h += y; y = 0; }
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w = (x + w < dst->width) ? w : dst->width - x;
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h = (y + h < dst->height) ? h : dst->height - y;
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#ifdef JBIG2_DEBUG
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jbig2_error(ctx, JBIG2_SEVERITY_DEBUG, -1,
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"compositing %dx%d at (%d, %d) after clipping\n",
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w, h, x, y);
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#endif
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#if 0
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/* special case complete/strip replacement */
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/* disabled because it's only safe to do when the destination
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buffer is all-blank. */
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if ((x == 0) && (w == src->width)) {
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memcpy(dst->data + y*dst->stride, src->data, h*src->stride);
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return 0;
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}
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#endif
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leftbyte = x >> 3;
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rightbyte = (x + w - 1) >> 3;
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shift = x & 7;
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/* general OR case */
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s = ss;
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d = dd = dst->data + y*dst->stride + leftbyte;
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if (leftbyte == rightbyte) {
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mask = 0x100 - (0x100 >> w);
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for (j = 0; j < h; j++) {
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*d |= (*s & mask) >> shift;
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d += dst->stride;
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s += src->stride;
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}
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} else if (shift == 0) {
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rightmask = (w & 7) ? 0x100 - (1 << (8 - (w & 7))) : 0xFF;
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for (j = 0; j < h; j++) {
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for (i = leftbyte; i < rightbyte; i++)
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*d++ |= *s++;
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*d |= *s & rightmask;
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d = (dd += dst->stride);
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s = (ss += src->stride);
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}
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} else {
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bool overlap = (((w + 7) >> 3) < ((x + w + 7) >> 3) - (x >> 3));
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mask = 0x100 - (1 << shift);
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if (overlap)
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rightmask = (0x100 - (0x100 >> ((x + w) & 7))) >> (8 - shift);
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else
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rightmask = 0x100 - (0x100 >> (w & 7));
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for (j = 0; j < h; j++) {
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*d++ |= (*s & mask) >> shift;
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for(i = leftbyte; i < rightbyte - 1; i++) {
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*d |= ((*s++ & ~mask) << (8 - shift));
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*d++ |= ((*s & mask) >> shift);
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}
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if (overlap)
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*d |= (*s & rightmask) << (8 - shift);
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else
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*d |= ((s[0] & ~mask) << (8 - shift)) |
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((s[1] & rightmask) >> shift);
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d = (dd += dst->stride);
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s = (ss += src->stride);
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}
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}
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return 0;
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}
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/* initialize an image bitmap to a constant value */
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void jbig2_image_clear(Jbig2Ctx *ctx, Jbig2Image *image, int value)
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{
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const uint8_t fill = value ? 0xFF : 0x00;
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memset(image->data, fill, image->stride*image->height);
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}
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/* look up a pixel value in an image.
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returns 0 outside the image frame for the convenience of
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the template code
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*/
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int jbig2_image_get_pixel(Jbig2Image *image, int x, int y)
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{
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const int w = image->width;
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const int h = image->height;
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const int byte = (x >> 3) + y*image->stride;
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const int bit = 7 - (x & 7);
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if ((x < 0) || (x >= w)) return 0;
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if ((y < 0) || (y >= h)) return 0;
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return ((image->data[byte]>>bit) & 1);
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}
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/* set an individual pixel value in an image */
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int jbig2_image_set_pixel(Jbig2Image *image, int x, int y, bool value)
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{
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const int w = image->width;
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const int h = image->height;
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int scratch, mask;
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int bit, byte;
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if ((x < 0) || (x >= w)) return 0;
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if ((y < 0) || (y >= h)) return 0;
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byte = (x >> 3) + y*image->stride;
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bit = 7 - (x & 7);
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mask = (1 << bit) ^ 0xff;
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scratch = image->data[byte] & mask;
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image->data[byte] = scratch | (value << bit);
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return 1;
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}
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